English

Hadronization effects on the baryon-strangeness correlation in quark combination models

High Energy Physics - Phenomenology 2016-09-26 v1

Abstract

The baryon-strangeness correlation in the hadronization of the quark matter is studied within the quark combination mechanism. We calculate the correlation coefficient CBS=3(BSBS)/(S2S2)C_{BS} = -3\big(\langle B S \rangle -\langle B\rangle \langle S\rangle\big)/\big( \langle S^2 \rangle-\langle S \rangle^2 \big) of initial hadrons produced from the deconfined free quark system with CBS(q)=1C^{(q)}_{BS}=1. The competition of the production of baryons against that of mesons is the key dynamics that is most relevant to the change of baryon-strangeness correlation during system hadronization. Results of quark combination under the Poisson statistics agree with the statistical model predictions for a hadron resonance gas at vanishing chemical potential but differ from those at relatively large chemical potentials. Results beyond Poisson statistics are also obtained and are compared with calculations of Lattice QCD in the phase boundary, giving the best agreement at temperature T=163T =163 MeV. We predict the dependence of the CBSC_{BS} of hadron system on the baryon chemical potential and strangeness. These predictions are expected to be tested by the future Lattice QCD calculations at non-zero chemical potentials and/or by the Beam Energy Scan experiment of STAR Collaboration at RHIC.

Keywords

Cite

@article{arxiv.1505.03010,
  title  = {Hadronization effects on the baryon-strangeness correlation in quark combination models},
  author = {Feng-lan Shao and Jun Song and Rui-qin Wang},
  journal= {arXiv preprint arXiv:1505.03010},
  year   = {2016}
}

Comments

10 pages, 6 figures

R2 v1 2026-06-22T09:32:41.832Z